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Sensitive detection of hazardous explosives via highly fluorescent crystalline porous aromatic frameworks

机译:通过高度荧光的结晶多孔芳族骨架灵敏地检测危险爆炸物

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摘要

A three-dimensional (3D) porous aromatic framework (PAF-14) with high fluorescence quantum yield was synthesized from luminescent monomer of tetra(4-dihydroxyborylphenyl)germanium (TBPGe) building blocks. The powder X-ray diffraction (PXRD) analysis of the experimental and simulated patterns indicate that PAF-14 is highly crystalline with ctn topology. The Argon sorption measurement indicates that PAF-14 possesses high surface area (Brunauer Emmet Teller surface area: 1288 m2 g-1). Significantly, the introduction of germanium into PAF-14 skeletons may bring about a low-lying lowest unoccupied molecular orbital (LUMO) and the crystalline polymeric backbones enhance the sensitivity of electron delocalization. Therefore the designed PAF-14 exhibits high fluorescence quenching ability for hazardous explosives, such as nitrobenzene, 2,4-DNT (2,4-dinitrotoluene) and TNT (2,4,6-trinitrotoluene).
机译:由四(4-二羟基硼基苯基)锗(TBPGe)的发光单体合成了具有高荧光量子产率的三维(3D)多孔芳族骨架(PAF-14)。粉末X射线衍射(PXRD)对实验和模拟图案的分析表明,PAF-14具有ctn拓扑结构的高度结晶。氩吸附测量表明PAF-14具有高表面积(Brunauer Emmet Teller表面积:1288 m2 g-1)。值得注意的是,将锗引入PAF-14骨架可能会导致低空的最低未占据分子轨道(LUMO),而结晶的聚合物主链则增强了电子离域的敏感性。因此,设计的PAF-14对危险炸药(例如硝基苯,2,4-DNT(2,4-二硝基甲苯)和TNT(2,4,6-三硝基甲苯))表现出高荧光猝灭能力。

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